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首页> 外文期刊>ISPRS International Journal of Geo-Information >Multi-Objective Emergency Material Vehicle Dispatching and Routing under Dynamic Constraints in an Earthquake Disaster Environment
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Multi-Objective Emergency Material Vehicle Dispatching and Routing under Dynamic Constraints in an Earthquake Disaster Environment

机译:地震灾害动态约束下的多目标应急物资车辆调度与路由

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Emergency material vehicle dispatching and routing (EMVDR) is an important task in emergency relief after large-scale earthquake disasters. However, EMVDR is subject to dynamic disaster environment, with uncertainty surrounding elements such as the transportation network and relief materials. Accurate and dynamic emergency material dispatching and routing is difficult. This paper proposes an effective and efficient multi-objective multi-dynamic-constraint emergency material vehicle dispatching and routing model. Considering travel time, road capacity, and material supply and demand, the proposed EMVDR model is to deliver emergency materials from multiple emergency material depositories to multiple disaster points while satisfying the objectives of maximizing transport efficiency and minimizing the difference of material urgency degrees among multiple disaster points at any one time. Furthermore, a continuous-time dynamic network flow method is developed to solve this complicated model. The collected data from Ludian earthquake were used to conduct our experiments in the post-quake and the results demonstrate that: (1) the EMVDR model adapts to the dynamic disaster environment very well; (2) considering the difference of material urgency degree, the material loss ratio is ?10.7%, but the variance of urgency degree decreases from 2.39 to 0.37; (3) the EMVDR model shows good performance in time and space, which allows for decisions to be made nearly in real time. This paper can provide spatial decision-making support for emergency material relief in large-scale earthquake disasters.
机译:紧急物资车辆调度和路由(EMVDR)是大规模地震灾害后紧急救援的重要任务。但是,EMVDR受动态灾难环境的影响,运输网络和救援物资等要素的不确定性。准确,动态的紧急物资分配和路由非常困难。提出了一种有效,高效的多目标,多动态约束的应急物资车辆调度与调度模型。考虑到出行时间,道路通行能力以及物料供求情况,提出的EMVDR模型旨在将应急物资从多个应急物资储存库运送到多个灾难点,同时满足最大化运输效率和最小化多重灾害之间物资紧急程度差异的目标。随时可以指向。此外,开发了一种连续时间动态网络流方法来解决此复杂模型。鲁甸地震的震后采集数据用于进行地震实验,结果表明:(1)EMVDR模型很好地适应了动态灾害环境; (2)考虑物质紧迫度的差异,物质损失率约为10.7%,但紧迫度的方差从2.39减小到0.37。 (3)EMVDR模型在时间和空间上显示出良好的性能,这使得决策几乎可以实时进行。本文可为大规模地震灾害中的紧急物资救援提供空间决策支持。

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